Maeda Satoshi, Ohno Koichi
Department of Chemistry, Graduate School of Science, Tohoku University, Aramaki, Aoba-ku, Sendai 980-8578, Japan.
J Phys Chem A. 2005 Jun 30;109(25):5742-53. doi: 10.1021/jp0513162.
Technical details of a new global mapping technique for finding equilibrium (EQ) and transition structures (TS) on potential energy surfaces (PES), the scaled hypersphere search (SHS) method (Ohno, K.; Maeda, S. Chem. Phys. Lett. 2004, 384, 277), are presented. On the basis of a simple principle that reaction pathways are found as anharmonic downward distortions of PES around an EQ point, the reaction pathways can be obtained as energy minima on the scaled hypersphere surface, which would have a constant energy when the potentials are harmonic. Connections of SHS paths between each EQ are very similar to corresponding intrinsic reaction coordinate (IRC) connections. The energy maximum along the SHS path reaches a region in close proximity to the TS of the reaction pathway, and the subsequent geometry optimization from the SHS maximum structure easily converges to the TS. The SHS method, using the one-after-another algorithm connecting EQ and TS, considerably reduces the multidimensional space to be searched to certain limited regions around the pathways connecting each EQ with the neighboring TS. Applications of the SHS method have been made to ab initio surfaces of formaldehyde and propyne molecules to obtain systematically five EQ and nine TS for formaldehyde and seven EQ and 32 TS for propyne.
介绍了一种用于在势能面(PES)上寻找平衡(EQ)和过渡结构(TS)的新全局映射技术——缩放超球面搜索(SHS)方法(Ohno, K.; Maeda, S. 《化学物理快报》2004年,第384卷,第277页)的技术细节。基于一个简单的原理,即反应路径是作为围绕EQ点的PES的非谐向下扭曲而找到的,反应路径可以作为缩放超球面表面上的能量最小值获得,当势能为谐函数时,该表面将具有恒定能量。每个EQ之间的SHS路径连接与相应的内禀反应坐标(IRC)连接非常相似。沿着SHS路径的能量最大值到达反应路径TS附近的区域,并且从SHS最大结构进行的后续几何优化很容易收敛到TS。SHS方法使用逐个连接EQ和TS的算法,将需要搜索的多维空间大大减少到连接每个EQ与相邻TS的路径周围的某些有限区域。SHS方法已应用于甲醛和丙炔分子的从头算表面,以系统地获得甲醛的五个EQ和九个TS以及丙炔的七个EQ和32个TS。